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Colorado Water Science Center

Welcome to the USGS Colorado Water Science Center!  Please use these pages to explore the hydrologic data and scientific investigations we conduct on Colorado water resources.

NOTICE: USGS is improving the way that sample data are stored and served to the public.

News

Modernized Access to Samples Data - WEBINAR

Modernized Access to Samples Data - WEBINAR

Media Alert: USGS field crews to study avalanche prone regions using airborne techniques near Durango

Media Alert: USGS field crews to study avalanche prone regions using airborne techniques near Durango

USGS provides easy access to Colorado River science with new online portal

USGS provides easy access to Colorado River science with new online portal

Publications

Assessment and characterization of ephemeral stream channel stability and mechanisms affecting erosion in Grand Valley, western Colorado, 2018–21

The Grand Valley in western Colorado is in the semiarid Southwest United States. The north side of the Grand Valley has many ungaged ephemeral streams, which are of particular interest because (1) the underlying bedrock geology, Late Cretaceous Mancos Shale, is a sedimentary rock deposit identified as a major salinity contributor to the Colorado River and (2) despite infrequent streamflows of shor
Authors
Joel William Homan

Groundwater hydrology, groundwater and surface-water interactions, aquifer testing, and groundwater-flow simulations for the Fountain Creek alluvial aquifer, near Colorado Springs, Colorado, 2018–20

From 2018 through 2020, the U.S. Geological Survey, in cooperation with the Air Force Civil Engineering Center, conducted an integrated study of the Fountain Creek alluvial aquifer located near Colorado Springs, Colorado. The objective of the study was to characterize hydrologic conditions for the alluvial aquifer pertinent to the potential for transport of solutes. Specific goals of this report w
Authors
Connor P. Newman, Cory A. Russell, Zachary D. Kisfalusi, Suzanne Paschke

PFAS river export analysis highlights the urgent need for catchment-scale mass loading data

Source apportionment of per- and polyfluoroalkyl substances (PFAS) requires an understanding of the mass loading of these compounds in river basins. However, there is a lack of temporally variable and catchment-scale mass loading data, meaning identification and prioritization of sources of PFAS to rivers for management interventions can be difficult. Here, we analyze PFAS concentrations and loads
Authors
Patrick Byrne, William M. Mayes, Alun L. James, Sean Comber, Emma Biles, Alex Riley, Robert L. Runkel

Science

Biologically Active Chemical Research Core Technology Team

About the Research. The Biologically Active Chemicals Research Core Technology Team (CTT) as part of the Environmental Health Program conducts field and laboratory research on the occurrence, fate, and effects of complex mixtures of biologically active organic and inorganic chemicals in aquatic environments.
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Biologically Active Chemical Research Core Technology Team

About the Research. The Biologically Active Chemicals Research Core Technology Team (CTT) as part of the Environmental Health Program conducts field and laboratory research on the occurrence, fate, and effects of complex mixtures of biologically active organic and inorganic chemicals in aquatic environments.
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Isotopic and environmental tracers for improved understanding of geochemical and hydrologic processes occurring near flooded mine workings

Draining mine tunnels contribute metals and acidity to streams throughout the western United States. One remediation strategy that is increasing in usage is the emplacement of hydraulic bulkheads to impound water within the subsurface. Potential secondary effects of bulkhead usage are difficult to quantify however because of the inherent complexity of most mountain hydrologic systems. In...
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Isotopic and environmental tracers for improved understanding of geochemical and hydrologic processes occurring near flooded mine workings

Draining mine tunnels contribute metals and acidity to streams throughout the western United States. One remediation strategy that is increasing in usage is the emplacement of hydraulic bulkheads to impound water within the subsurface. Potential secondary effects of bulkhead usage are difficult to quantify however because of the inherent complexity of most mountain hydrologic systems. In...
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USGS Science in the Three Lakes System

The Three Lakes System of Colorado includes Grand Lake, Shadow Mountain Reservoir, and Granby Reservoir. This system is located within the headwaters of the Upper Colorado River Basin and is near the west entrance of Rocky Mountain National Park. The town of Grand Lake is a popular recreational location within Colorado, and the Three Lakes System provides year-round activities including swimming...
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USGS Science in the Three Lakes System

The Three Lakes System of Colorado includes Grand Lake, Shadow Mountain Reservoir, and Granby Reservoir. This system is located within the headwaters of the Upper Colorado River Basin and is near the west entrance of Rocky Mountain National Park. The town of Grand Lake is a popular recreational location within Colorado, and the Three Lakes System provides year-round activities including swimming...
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